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Updated: Jan 20, 2026

Bioluminescence and Near-infrared Imaging of Optic Neuritis and Brain Inflammation in the EAE Model of Multiple Sclerosis in Mice
Published on: March 1, 2017
Effects of intestinal nematode treatment on CD11b activation state in an EAE mouse model of multiple sclerosis
Katarzyna Donskow-Łysoniewska1, Katarzyna Krawczak2, Maja Machcińska3
1Department of Parasitology, Institute of Zoology, Faculty of Biology, University of Warsaw, Warsaw, Poland; Laboratory of Parasitology, General Karol Kaczkowski Military Institute of Hygiene and Epidemiology, Warsaw, Poland.
Abstract:
The experimental autoimmune encephalomyelitis (EAE) animal model of Multiple Sclerosis (MS) is characterized by episodic neurologic dysfunction arising as a consequence of perivascular mononuclear cell infiltration and demyelination in the CNS. Leukocyte integrins, which are responsible for migration through the endothelial, play key roles in the pathogenesis of autoimmune diseases and chronic inflammation. Intestinal infection of mice with Heligmosomoides polygyrus appears to target CD11b (integrin αM), which is highly expressed on myeloid cells and is critical for their migration and function. H. polygyrus infection induces suppression of ongoing experimental EAE and extensive infiltration of CD11b+ cells to the CNS. Therefore, the aim of the present study was to characterize the phenotype and activity of CD11b+ cells accompanying the tissue phase infection of L4 H. polygyrus in EAE mice. It was found that the cells displayed a CD11b+ state with a distinct phenotype characterised by the expression of co-stimulatory CD80/CD86, CD40, MHCII, F4/80 and the mannose receptor CD206. This activation state illustrates the heterogeneity of CD11b+ cells in EAE mice following nematode invasion; these may have important consequences for understanding the effects of CD11b integrin, which is involved in the downregulation of neuroinflammatory disorders.
Insights
Heligmosomoides polygyrus infection suppresses experimental autoimmune encephalomyelitis (EAE) by recruiting CD11b+ cells to the central nervous system. These cells exhibit an activated phenotype, suggesting a role in downregulating neuroinflammation in Multiple Sclerosis models.
Area of Science:
- Immunology
- Neuroscience
- Parasitology
Background:
- Experimental autoimmune encephalomyelitis (EAE) models Multiple Sclerosis (MS), involving CNS inflammation and demyelination.
- Leukocyte integrins, like CD11b, are crucial for immune cell migration in autoimmune and inflammatory conditions.
- Heligmosomoides polygyrus infection in mice impacts CD11b+ myeloid cell function and migration.
Purpose of the Study:
- To investigate the phenotype and activity of CD11b+ cells during H. polygyrus infection in EAE mice.
- To understand the role of these CD11b+ cells in the suppression of EAE.
Main Methods:
- Induction of EAE in mice.
- Intestinal infection with L4 H. polygyrus.
- Flow cytometry analysis of CD11b+ cells in the CNS, assessing expression of CD80/CD86, CD40, MHCII, F4/80, and CD206.
Main Results:
- H. polygyrus infection suppressed ongoing EAE.
- Extensive infiltration of CD11b+ cells into the CNS was observed.
- These CD11b+ cells displayed an activated phenotype with co-stimulatory molecules and CD206 expression.
Conclusions:
- CD11b+ cells in EAE mice infected with H. polygyrus exhibit a distinct activated phenotype.
- This cellular response may contribute to the downregulation of neuroinflammation in EAE.
- Understanding CD11b+ cell heterogeneity is important for neuroinflammatory disorder research.
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